A paper roll sorting device

CN224657401UActive Publication Date: 2026-08-21CHAINT CORP
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202521850537.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-29
Publication Date
2026-08-21
Estimated Expiration
2035-08-29

AI Technical Summary

Technical Problem

[0004]然,现有技术中通常采用人工进行筛分,其即增加了人员成本,又容易存在筛分出错

Benefits of technology

本实用新型通过设置第一链板输送组件,对纸卷进行自动输送;通过设置第一移动踢纸器对不同规格的纸卷踢送至不同的筛分组件中,以使同一规格的纸卷在同一组筛分组件中进行缓冲与合并;通过设置第二链板输送组件,对经合并后的纸卷进行自动输送至下一个工序,以完成纸卷的自动化筛分与合并。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224657401U_ABST
    Figure CN224657401U_ABST
Patent Text Reader

Abstract

The utility model belongs to packaging equipment technical field, concretely provides a paper roll sorting device, including first chain plate conveying assembly, first mobile paper kicker, screening subassembly and second chain plate conveying assembly, first mobile paper kicker sets up on first chain plate conveying assembly, screening subassembly is equipped with along the conveyance direction of first chain plate conveying assembly and is set up mutually in parallel multiple groups, second chain plate conveying assembly and first chain plate conveying assembly are set up mutually in the displacement direction both ends of screening subassembly, the utility model discloses a first chain plate conveying assembly is set up, and the automatic conveying is carried out to paper roll, through setting up first mobile paper kicker, paper roll of different specifications is kicked and is sent to different screening subassembly, to make the paper roll of same specification in same group screening subassembly carries out the buffer and the combination, through setting up second chain plate conveying assembly, the paper roll after being combined is automatically conveyed to next procedure, to complete the automatic screening and the combination of paper roll.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model belongs to the field of packaging equipment technology and relates to a paper roll sorting device. Background Technology

[0002] With the rapid development of the express delivery industry, the demand for thermal paper used as a substrate for label production is growing rapidly.

[0003] During the preparation of thermal paper, it is necessary to package, label, and sieve and merge according to the label information (such as the specifications of the paper roll) for subsequent bundling.

[0004] However, existing technologies typically employ manual screening, which increases labor costs and is prone to screening errors. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the present invention aims to provide a highly automated paper roll sorting device.

[0006] This utility model provides a paper roll sorting device, including a first chain plate conveying assembly, a first movable paper kicker, a screening assembly, and a second chain plate conveying assembly; The first chain plate conveying assembly extends horizontally, and a first movable paper kicker is also provided on the first chain plate conveying assembly. The first movable paper kicker is used to kick the labeled paper roll to the screening assembly. The screening assembly is provided with multiple sets arranged side by side along the conveying direction of the first chain plate conveying assembly. Each set of the screening assembly includes a second paper roller and a buffer. The buffer is provided with multiple sets arranged at intervals along the conveying direction of the second paper roller. The second chain plate conveyor assembly is arranged parallel to the first chain plate conveyor assembly, and the second chain plate conveyor assembly and the first chain plate conveyor assembly are arranged at opposite ends of the displacement direction of the screening assembly. After the paper roll is labeled, it is screened by the screening assembly according to the requirements and then conveyed to the second chain plate conveyor assembly so that it can be conveyed to the next process.

[0007] Furthermore, the second paper roll includes a support member and a paper roll surface disposed on the support member; The support member has multiple sets of mutually spaced-apart components; The tilt angle of the paper rolling surface is set to 1: (40-50).

[0008] Furthermore, each of the buffers includes a buffer seat and a buffer drive, a buffer arm, and a buffer roller disposed on the buffer seat; The buffer seat is connected to the support of the second roll plate; One end of the buffer drive is hinged to the buffer seat, and the other end of the buffer drive is hinged to the buffer arm, which is used to drive the buffer arm to extend or retract relative to the buffer seat. The buffer roller and buffer arm, at the end furthest from the buffer drive, come into contact with the paper roll to buffer the paper roll as it is conveyed on the second roll plate.

[0009] Furthermore, the paper roll sorting device of this utility model also includes a paper kicking assembly and a first rolling plate; The paper kicking assembly includes a first paper kicking frame and a first paper kicking arm, a first paper kicking roller, and a first paper kicking drive unit disposed on the first paper kicking frame; The first paper kicker is vertically disposed on the fixing part of the first chain plate conveying assembly, and one end of the first paper kicker is fixedly connected to the fixing part of the first chain plate conveying assembly; One end of the first paper kicking arm is on the extension end of the first paper kicking frame, and the other end of the first paper kicking arm extends vertically to be spaced apart from the fixing part of the first chain plate conveying assembly; The first kicking roller is rotatably mounted on the extension end of the first kicking arm for contacting the paper roll; The first paper kicking drive is arranged vertically, and one end of the first paper kicking drive is fixedly connected to the first paper kicking frame. The driving end of the first paper kicking drive is connected to both the first paper kicking frame and the first paper kicking arm through a drive shaft. The first paper kicking arm swings along the first paper kicking frame through the drive of the first paper kicking drive, thereby driving the first paper kicking roller to kick or block the paper roll.

[0010] Furthermore, the first paper kicker is configured to include a vertical section and an inclined section connected to each other. One end of the vertical section is fixedly connected to the fixing part of the first chain plate conveying assembly, and the inclined section and the vertical section are set at an angle greater than 90 degrees and less than 180 degrees.

[0011] Furthermore, the first paper-kicking arm is configured with an inner arc structure.

[0012] Furthermore, the first moving paper kicker includes a second paper kicker frame and a second paper kicker arm, a second paper kicker roller, a second paper kicker drive, a paper kicker base, and a first paper kicker displacement assembly disposed on the second paper kicker frame; The second paper kicker is vertically mounted on the fixing part of the first chain plate conveying assembly, and one end of the second paper kicker is fixedly connected to the fixing part of the first chain plate conveying assembly. One end of the second paper kicking arm is on the extended end of the second paper kicking frame, and the other end of the second paper kicking arm extends vertically to be spaced apart from the fixing part of the first chain plate conveying assembly; The second kick roller is rotatably mounted on the extension end of the second kick arm for contacting the paper roll; The second paper kicking drive is arranged vertically, and one end of the second paper kicking drive is fixedly connected to the second paper kicking frame. The driving end of the second paper kicking drive is connected to the second paper kicking frame and the second paper kicking arm through the driving shaft. The second paper kicking arm swings along the second paper kicking frame through the driving of the second paper kicking drive, thereby driving the second paper kicking roller to kick or block the paper roll. The paper kicking base is disposed on the lower end surface of the second paper kicking frame, and a first paper kicking displacement component is provided on the lower end surface of the paper kicking base. One end of the first paper kicking displacement component is fixedly connected to the fixing part of the first chain plate conveying component, and the other end of the first paper kicking displacement component is fixedly connected to the paper kicking base, which is used to drive the paper kicking base to move relative to the fixing part of the first chain plate conveying component.

[0013] Furthermore, the first paper-kicking displacement assembly includes an I-beam, a slide rail connected to the I-beam, and a drive structure for driving the slide rail to move relative to the I-beam, wherein the drive structure is configured as a motor or a hydraulic cylinder.

[0014] Compared with the prior art, the present invention has the following beneficial effects: This invention automatically conveys paper rolls by setting up a first chain plate conveying assembly; kicks paper rolls of different specifications to different screening assemblies by setting up a first moving paper kicker, so that paper rolls of the same specification are buffered and merged in the same set of screening assemblies; and automatically conveys the merged paper rolls to the next process by setting up a second chain plate conveying assembly, so as to complete the automated screening and merging of paper rolls.

[0015] In addition to the objectives, features, and advantages described above, this utility model has other objectives, features, and advantages. The present utility model will now be described in further detail with reference to the figures. Attached Figure Description

[0016] The accompanying drawings, which form part of this application, are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an undue limitation of the present invention. In the drawings: Figure 1 This is a schematic diagram of the sorting device in an embodiment of the present invention (the arrows in the diagram indicate the displacement direction of the paper roll). Figure 2 yes Figure 1 Schematic diagram of the AA section (the arrows in the diagram indicate the direction of paper roll displacement); Figure 3 yes Figure 2 A schematic diagram of the structure of the buffer; Figure 4 yes Figure 1 Schematic diagram of the BB cross section (the arrows in the diagram indicate the direction of paper roll displacement); Figure 5 yes Figure 1 A schematic diagram of the structure of the center kick paper assembly; Figure 6 yes Figure 1 A schematic diagram of the structure of the first moving paper kicker.

[0017] in: 1. First chain conveyor assembly; 2. Paper kicking assembly; 2.1. First paper kicking frame; 2.2. First paper kicking arm; 2.3. First paper kicking roller; 2.4. First paper kicking drive; 3. First moving paper kicker; 3.1. Second paper kicking frame; 3.2. Second paper kicking arm; 3.3. Second paper kicking roller; 3.4. Second paper kicking drive; 3.5. Paper kicking base; 3.6. First paper kicking displacement assembly; 4. Screening assembly; 5. Second chain conveyor assembly; 6. Roller board; 7. Buffer; 7.1. Buffer seat; 7.2. Buffer drive; 7.3. Buffer arm; 7.4. Buffer roller; 8. Second moving paper kicker. Detailed Implementation

[0018] To make the above-mentioned objectives, features, and advantages of this utility model clearer and easier to understand, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. It should be noted that the accompanying drawings of this utility model are all in a simplified form and use non-precise proportions, and are only used to facilitate and clearly assist in illustrating the implementation of this utility model; the "several" mentioned in this utility model are not limited to the specific number shown in the examples in the drawings; the directions or positional relationships indicated by "front," "middle," "rear," "left," "right," "up," "down," "top," "bottom," and "middle" mentioned in this utility model are all based on the directions or positional relationships shown in the accompanying drawings of this utility model, and do not indicate or imply that the device or component referred to must have a specific orientation, nor should they be construed as limitations on this utility model.

[0019] Example: See Figure 1 As shown, the paper roll sorting device provided by this utility model includes a first chain plate conveying assembly 1, a first moving paper kicker 3, a screening assembly 4, and a second chain plate conveying assembly 5. The first chain plate conveying assembly 1 extends horizontally and is also provided with a first moving paper kicker 3, which is used to kick the labeled paper roll to the screening assembly 4. The second chain plate conveyor assembly 5 and the first chain plate conveyor assembly 1 are arranged in parallel to each other, and the second chain plate conveyor assembly 5 and the first chain plate conveyor assembly 1 are arranged at both ends of the displacement direction of the screening assembly 4. After being labeled, the paper roll is screened by the screening assembly 4 according to the requirements (such as according to the information recorded on the label) and then conveyed to the second chain plate conveyor assembly 5 so that it can be conveyed to the next process (such as bundling) through the second chain plate conveyor assembly 5.

[0020] Furthermore, in addition to the above structure, the first chain conveyor assembly 1 and the first moving paper kicker 3 can also be arranged independently of each other, with the first moving paper kicker 3 located on the side of the first chain conveyor assembly 1 away from the screening assembly 4.

[0021] Preferably, in order to facilitate the screening component 4 to perform accurate screening according to the information recorded on the label, the first moving paper kicker 3 independently controls at least two sets, and the screening component 4 is provided with multiple sets arranged side by side along the conveying direction of the first chain plate conveying component 1. The multiple sets of screening components 4 are used to screen different paper rolls separately.

[0022] Furthermore, when the paper roll sorting device is only for the same type of paper roll, or when the paper roll conveyed by the first chain conveyor assembly 1 contains a specific paper roll, then it is not necessary to perform screening by the screening assembly 4 or when the first moving paper kicker 3 detects a specific paper roll. Specifically, see [link to documentation]. Figure 1 and Figure 2 As shown, the paper roll sorting device of this utility model also includes a paper kicking assembly 2 and a first rolling paper 6; The first paper roll 6 includes a support member and a paper roll surface disposed on the support member; the support member has multiple sets of paper roll surfaces that are spaced apart from each other; the paper roll surface is configured as an inclined structure that descends sequentially from the first chain plate conveying assembly 1 to the second chain plate conveying assembly 5, so that the paper roll is conveyed from the first chain plate conveying assembly 1 to the second chain plate conveying assembly 5 by the kicking paper assembly 2, and then conveyed to the next process (such as bundling) by the second chain plate conveying assembly 5.

[0023] Preferably, in order to facilitate the buffering and combination of several paper rolls conveyed by the first chain plate conveying assembly 1, so as to facilitate the unified operation of multiple paper rolls of the same specification in the next process (such as bundling), a plurality of buffers 7 are also provided on the first rolling plate 6, which are spaced apart from each other; the distance between two adjacent buffers 7 is set according to the specification of the paper rolls being conveyed.

[0024] Further preferably, the tilt angle of the paper rolling surface is preferably set to 1:(40-50). Specifically, in this embodiment, the tilt angle of the paper rolling surface is preferably set to 1:45.

[0025] For further optimization, see Figure 3As shown, a single buffer 7 includes a buffer seat 7.1 and a buffer drive 7.2, a buffer arm 7.3 and a buffer roller 7.4 disposed on the buffer seat 7.1; The buffer seat 7.1 is connected to the support of the first rolling paperboard 6; One end of the buffer drive 7.2 is hinged to the buffer seat 7.1, and the other end of the buffer drive 7.2 is hinged to the buffer arm 7.3, which is used to drive the buffer arm 7.3 to extend or retract relative to the buffer seat 7.1. The buffer roller 7.4 and the buffer arm 7.3, located at the end away from the buffer drive 7.2, come into contact with the paper roll to buffer the paper roll as it is conveyed on the first roll plate 6.

[0026] Preferred, see Figure 4 As shown, the single screening component 4 includes a second paper roll and a buffer 7; the structure of the second paper roll is the same as the structure of the first paper roll 6.

[0027] Preferably, to facilitate the transfer of the paper roll on the second chain conveyor assembly 5 to the next process, at least one second moving paper kicker 8 is also provided on the second chain conveyor assembly 5. Specifically, the structure of the second moving paper kicker 8 is the same as that of the first moving paper kicker 3.

[0028] Furthermore, in addition to the above structure, the second chain conveyor assembly 5 and at least one second movable paper kicker 8 can be arranged independently of each other, with at least one second movable paper kicker 8 located on the side of the second chain conveyor assembly 5 away from the screening assembly 4.

[0029] As a further embodiment of this utility model, see [link to relevant documentation]. Figure 5 As shown, the paper kicking assembly 2 includes a first paper kicking frame 2.1 and a first paper kicking arm 2.2, a first paper kicking roller 2.3 and a first paper kicking drive 2.4 disposed on the first paper kicking frame 2.1; The first paper kicker 2.1 is vertically disposed on the fixing part of the first chain plate conveying assembly 1, and one end of the first paper kicker 2.1 is fixedly connected to the fixing part of the first chain plate conveying assembly 1; One end of the first paper kicking arm 2.2 is attached to the extension end of the first paper kicking frame 2.1, and the other end of the paper kicking arm 2.2 extends vertically to be spaced apart from the fixing part of the first chain plate conveying assembly 1; The first paper-kicking roller 2.3 is rotatably mounted on the extension end of the first paper-kicking arm 2.2 for contacting the paper roll; The first paper kicking drive 2.4 is arranged vertically, and one end of the first paper kicking drive 2.4 is fixedly connected to the paper kicking frame 2.1. The driving end of the first paper kicking drive 2.4 is connected to both the paper kicking frame 2.1 and the first paper kicking arm 2.2 through a drive shaft. The first paper kicking arm 2.2 swings along the first paper kicking frame 2.1 under the drive of the first paper kicking drive 2.4, thereby driving the first paper kicking roller 2.3 to kick or block the paper roll.

[0030] Preferably, the first paper-kicking drive component 2.4 is preferably configured as a cylinder or a hydraulic cylinder.

[0031] Preferably, to provide sufficient space for the first paper-kicking arm 2.2 to swing, the paper-kicking frame 2.1 is preferably configured to include a vertical section and an inclined section connected to each other. One end of the vertical section is fixedly connected to the fixing part of the first chain plate conveying assembly 1. The inclined section and the vertical section are set at an angle greater than 90 degrees and less than 180 degrees (specifically, in this embodiment, the included angle between the inclined section and the vertical section is preferably set to 110º-130º).

[0032] Preferably, in order to reduce the contact area between the first paper kicking arm 2.2 and the paper roll, the first paper kicking arm 2.2 is preferably configured as an inner arc structure.

[0033] As a further embodiment of this utility model, see [link to relevant documentation]. Figure 6 As shown, the first moving paper kicker 3 includes a second paper kicker frame 3.1 and a second paper kicker arm 3.2, a second paper kicker roller 3.3, a second paper kicker drive 3.4, a paper kicker base 3.5 and a first paper kicker displacement assembly 3.6 disposed on the second paper kicker frame 3.1; The second paper kicker 3.1 is vertically disposed on the fixing part of the first chain plate conveying assembly 1, and one end of the second paper kicker 3.1 is fixedly connected to the fixing part of the first chain plate conveying assembly 1; One end of the second paper kicking arm 3.2 is attached to the extension end of the second paper kicking frame 3.1, and the other end of the second paper kicking arm 3.2 extends vertically to be spaced apart from the fixing part of the first chain plate conveying assembly 1; The second kicking roller 3.3 is rotatably mounted on the extension end of the second kicking arm 3.2 for contacting the paper roll; The second paper kicking drive 3.4 is arranged vertically, and one end of the second paper kicking drive 3.4 is fixedly connected to the second paper kicking frame 3.1. The driving end of the second paper kicking drive 3.4 is connected to the second paper kicking frame 3.1 and the second paper kicking arm 3.2 through the drive shaft. The second paper kicking arm 3.2 swings along the second paper kicking frame 3.1 by the drive of the second paper kicking drive 3.4, thereby driving the second paper kicking roller 3.3 to kick or block the paper roll. The paper kicking base 3.5 is disposed on the lower end surface of the second paper kicking frame 3.1, and a first paper kicking displacement component 3.6 is provided on the lower end surface of the paper kicking base 3.5. One end of the first paper kicking displacement component 3.6 is fixedly connected to the fixing part of the first chain plate conveying component 1, and the other end of the first paper kicking displacement component 3.6 is fixedly connected to the paper kicking base 3.5, which is used to drive the paper kicking base 3.5 to move relative to the fixing part of the first chain plate conveying component 1.

[0034] More preferably, the first paper-kicking displacement component 3.6 is preferably configured as a track displacement structure; specifically, it includes: an I-beam, a slide rail connected to the I-beam, and a drive structure for driving the slide rail to move relative to the I-beam, wherein the drive structure is preferably configured as a motor or a hydraulic cylinder.

[0035] Preferably, the second paper-kicking drive 3.4 is configured as a cylinder or a hydraulic cylinder.

[0036] Preferably, to provide sufficient space for the second paper kicking arm 3.2 to swing, the second paper kicking frame 3.1 is preferably configured to include a vertical section and an inclined section connected to each other. One end of the vertical section is fixedly connected to the fixing part of the first chain plate conveying assembly 1. The inclined section and the vertical section are set at an angle greater than 90 degrees and less than 180 degrees (specifically, in this embodiment, the included angle between the inclined section and the vertical section is preferably set to 110º-130º).

[0037] Preferably, in order to reduce the contact area between the second paper kicking arm 3.2 and the paper roll, the second paper kicking arm 3.2 is preferably configured as an inner arc structure.

[0038] Preferably, in order to prevent the paper roll from discoloring due to a rigid connection between the second kick roller 3.3 and the paper roll, an adhesive layer is provided on the second kick roller 3.3, and the adhesive layer contacts the paper roll.

[0039] As a further embodiment of the present invention, the structure of the second moving paper kicker 8 is the same as that of the first moving paper kicker 3, and the second moving paper kicker 8 and the first moving paper kicker 3 are symmetrically arranged along the screening component 4.

[0040] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A paper roll sorting device, characterized in that, It includes a first chain conveyor assembly (1), a first moving paper kicker (3), a screening assembly (4), and a second chain conveyor assembly (5); The first chain conveyor assembly (1) extends horizontally; The first movable paper kicker (3) is mounted on the first chain conveyor assembly (1) and is used to kick the labeled paper roll to the screening assembly (4); The screening component (4) is provided with multiple sets arranged side by side along the conveying direction of the first chain plate conveying component (1). Each set of the screening component (4) includes a second paper roller and a buffer (7). The buffer (7) is provided with multiple sets arranged at intervals along the conveying direction of the second paper roller. The second chain plate conveying assembly (5) and the first chain plate conveying assembly (1) are arranged in parallel to each other, and the second chain plate conveying assembly (5) and the first chain plate conveying assembly (1) are arranged at both ends of the displacement direction of the screening assembly (4). After the paper roll is labeled, it is screened by the screening assembly (4) according to the requirements and then conveyed to the second chain plate conveying assembly (5) so that it can be conveyed to the next process through the second chain plate conveying assembly (5).

2. The paper roll sorting device according to claim 1, characterized in that, The second paper roll includes a support member and a paper roll surface disposed on the support member; The support member has multiple sets of mutually spaced-apart components; The tilt angle of the paper rolling surface is set to 1: (40-50).

3. The paper roll sorting device according to claim 1, characterized in that, Each of the buffers (7) includes a buffer seat (7.1) and a buffer drive (7.2), a buffer arm (7.3) and a buffer roller (7.4) disposed on the buffer seat (7.1). The buffer seat (7.1) is connected to the support of the second roll plate; One end of the buffer drive (7.2) is hinged to the buffer seat (7.1), and the other end of the buffer drive (7.2) is hinged to the buffer arm (7.3), which is used to drive the buffer arm (7.3) to extend or retract relative to the buffer seat (7.1). The buffer roller (7.4) and the buffer arm (7.3) at the end away from the buffer drive (7.2) come into contact with the paper roll to buffer the paper roll when it is being conveyed on the second roll plate.

4. The paper roll sorting device according to any one of claims 1-3, characterized in that, It also includes a kicker assembly (2) and a first roll plate (6); The paper kicking assembly (2) includes a first paper kicking frame (2.1), a first paper kicking arm (2.2), a first paper kicking roller (2.3), and a first paper kicking drive (2.4) disposed on the first paper kicking frame (2.1). The first paper kicker (2.1) is vertically disposed on the fixing part of the first chain plate conveying assembly (1), and one end of the first paper kicker (2.1) is fixedly connected to the fixing part of the first chain plate conveying assembly (1); One end of the first paper kicking arm (2.2) is attached to the extension end of the first paper kicking frame (2.1), and the other end of the first paper kicking arm (2.2) extends vertically to be spaced apart from the fixing part of the first chain plate conveying assembly (1); The first kicking roller (2.3) is rotatably mounted on the extension end of the first kicking arm (2.2) for contacting the paper roll; The first paper kicking drive (2.4) is arranged in a vertical direction, and one end of the first paper kicking drive (2.4) is fixedly connected to the first paper kicking frame (2.1). The driving end of the first paper kicking drive (2.4) is connected to both the first paper kicking frame (2.1) and the first paper kicking arm (2.2) through a drive shaft. The first paper kicking arm (2.2) swings along the first paper kicking frame (2.1) through the drive of the first paper kicking drive (2.4), thereby driving the first paper kicking roller (2.3) to kick or block the paper roll.

5. The paper roll sorting device according to claim 4, characterized in that, The first paper kicker (2.1) is configured to include a vertical section and an inclined section connected to each other. One end of the vertical section is fixedly connected to the fixing part of the first chain plate conveying assembly (1). The inclined section and the vertical section are set at an angle greater than 90 degrees and less than 180 degrees.

6. The paper roll sorting device according to claim 4, characterized in that, The first paper kicking arm (2.2) is configured with an inner arc structure.

7. The paper roll sorting device according to claim 5 or 6, characterized in that, The first moving paper kicker (3) includes a second paper kicker frame (3.1) and a second paper kicker arm (3.2), a second paper kicker roller (3.3), a second paper kicker drive (3.4), a paper kicker base (3.5) and a first paper kicker displacement assembly (3.6) disposed on the second paper kicker frame (3.1). The second paper kicker (3.1) is vertically disposed on the fixing part of the first chain plate conveying assembly (1), and one end of the second paper kicker (3.1) is fixedly connected to the fixing part of the first chain plate conveying assembly (1); One end of the second paper kicking arm (3.2) is attached to the extension end of the second paper kicking frame (3.1), and the other end of the second paper kicking arm (3.2) extends vertically to be spaced apart from the fixing part of the first chain plate conveying assembly (1); The second kick roller (3.3) is rotatably mounted on the extension end of the second kick arm (3.2) for contacting the paper roll; The second paper kicking drive (3.4) is arranged in a vertical direction, and one end of the second paper kicking drive (3.4) is fixedly connected to the second paper kicking frame (3.1). The driving end of the second paper kicking drive (3.4) is connected to the second paper kicking frame (3.1) and the second paper kicking arm (3.2) through the driving shaft. The second paper kicking arm (3.2) swings along the second paper kicking frame (3.1) through the driving of the second paper kicking drive (3.4), thereby driving the second paper kicking roller (3.3) to kick or block the paper roll. The paper kicking base (3.5) is disposed on the lower end surface of the second paper kicking frame (3.1), and a first paper kicking displacement component (3.6) is provided on the lower end surface of the paper kicking base (3.5). One end of the first paper kicking displacement component (3.6) is fixedly connected to the fixing part of the first chain plate conveying component (1), and the other end of the first paper kicking displacement component (3.6) is fixedly connected to the paper kicking base (3.5), which is used to drive the paper kicking base (3.5) to move relative to the fixing part of the first chain plate conveying component (1).

8. The paper roll sorting device according to claim 7, characterized in that, The first paper-kicking displacement assembly (3.6) includes an I-beam, a slide rail connected to the I-beam, and a drive structure for driving the slide rail to move relative to the I-beam. The drive structure is configured as a motor or a hydraulic cylinder.